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Gating of single molecule junction conductance by charge transfer complex formation

Authors :
Vezzoli, Andrea
Grace, Iain
Brooke, Carly
Wang, Kun
Lambert, Colin J.
Xu, Bingqian
Nichols, Richard J.
Higgins, Simon J.
Publication Year :
2016

Abstract

The solid-state structures of organic charge transfer (CT) salts are critical in determining their mode of charge transport, and hence their unusual electrical properties, which range from semiconducting through metallic to superconducting. In contrast, using both theory and experiment, we show here that the conductance of metal | single molecule | metal junctions involving aromatic donor moieties (dialkylterthiophene, dialkylbenzene) increase by over an order of magnitude upon formation of charge transfer (CT) complexes with tetracyanoethylene (TCNE). This enhancement occurs because CT complex formation creates a new resonance in the transmission function, close to the metal contact Fermi energy, that is a signal of room-temperature quantum interference.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1601.00222
Document Type :
Working Paper